W波段回旋行波管仿真设计与热测实验
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电子科技大学,电子科技大学,电子科技大学,电子科技大学,中国北方电子设备研究所

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专项基金:2013ZX01011001


Simulation and hot test of a W-band gyro-TWT
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University of Electronic Science and Technology of China(UESTC),University of Electronic Science and Technology of China(UESTC),University of Electronic Science and Technology of China(UESTC),University of Electronic Science and Technology of China(UESTC),North Electronic Device Research Institute

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    摘要:

    通过软件仿真方法分析和设计了W波段回旋行波管的输入输出耦合器、磁控注入式电子枪以及高频互作用电路,根据优化结果加工了实物并进行了热测实验.实验结果表明,电子注电压60 kV,电流6 A,在94 GHz频率获得了最大峰值功率78 kW,增益53.9 dB以及21.7%的效率,峰值功率大于50 kW带宽达到3.8 GHz.PIC粒子模拟和热测实验均表明,设计的W波段回旋行波管能够稳定的工作,从而证明周期加载高频互作用电路在抑制寄生模式以及自激振荡方面具有很大的优势.

    Abstract:

    This paper has designed the input and output coupler,Magnetron Injection Gun (MIG) and beam-wave interaction circuit for a W-band gyrotron traveling tube (gyro-TWT) with software simulation. The tube was manufactured according to the optimized results. The gyro-TWT is driven by a voltage of 60 kV and current of 6 A. Hot test predicts its maximum peak output power of 78 kW, 21.7% efficiency at 94 GHz with a gain of 53.9 dB. The bandwidth with peak power greater than 50 kW is about 3.8 GHz. Both the PIC simulation and hot test indicated that the gyro-TWT can work stablely. The periodic lossy dielectric loaded circuit is excellent for suppressing potential spurious oscillations and absolute oscillation.

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邓学,唐勇,罗勇,王丽,王沙飞. W波段回旋行波管仿真设计与热测实验[J].红外与毫米波学报,2015,34(5):569~575]. DENG Xue, TANG Yong, LUO Yong, WANG Li, WANG Sha-Fei. Simulation and hot test of a W-band gyro-TWT[J]. J. Infrared Millim. Waves,2015,34(5):569~575.]

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历史
  • 收稿日期:2014-07-14
  • 最后修改日期:2015-01-05
  • 录用日期:2015-01-19
  • 在线发布日期: 2015-11-30
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